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Cubic and hexagonal boron nitride phases and phase boundaries.

Authors :
Biswas, Abhijit
Alvarez, Gustavo A.
Tripathi, Manoj
Lee, Jonghoon
Pieshkov, Tymofii S.
Li, Chenxi
Gao, Bin
Puthirath, Anand B.
Zhang, Xiang
Gray, Tia
Elkins, Jacob
Vajtai, Robert
Dai, Pengcheng
Birdwell, A. Glen
Neupane, Mahesh R.
Ivanov, Tony
Garratt, Elias J.
Pate, Bradford B.
Roy, Ajit K.
Dalton, Alan
Source :
Journal of Materials Chemistry C; 3/7/2024, Vol. 12 Issue 9, p3053-3062, 10p
Publication Year :
2024

Abstract

Phase stability of boron nitride (BN) polymorphs at elevated temperature is perplexing due to their complex nucleation and growth kinetics, nevertheless, holds great significance in fundamental science and technology. Therefore, the phase-transformation of three-dimensional cubic BN (3D c-BN) to a two-dimensional hexagonal BN (2D h-BN) or vice versa, remains an exciting domain to explore. Here, we used temperature-dependent spark plasma sintering on 3D c-BN, enabling phase transformations to a mixed phase of 3D/2D c-BN/h-BN material and ultimately to 2D h-BN. The phase transformed 2D h-BN ceramic features an extremely high density reaching ∼90% of the theoretical limit, and exhibits excellent room temperature thermal conductivity and mechanical properties. Our findings provide valuable fundamental insights into the complex phase diagram, the relative stability regimes and boundaries of 3D c-BN and 2D h-BN phase, with the exhibition of functional properties, pivotal for extreme environments sustainable material-based technology. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507526
Volume :
12
Issue :
9
Database :
Complementary Index
Journal :
Journal of Materials Chemistry C
Publication Type :
Academic Journal
Accession number :
175769059
Full Text :
https://doi.org/10.1039/d4tc00039k